Semicorex SiC epi wafers are becoming a key material for promoting technological innovation in high-frequency, high-temperature, and high-power application scenarios due to their excellent physical properties. Semicorex SiC Epi Wafers use industry-leading epitaxial growth technology and are designed to meet the high-end needs of new energy vehicles, 5G communications, renewable energy, and industrial power supplies, providing customers with high-performance, high-reliability core semiconductor solutions.*
Read MoreSend InquirySemicorex N-type SiC substrates will continue to drive the semiconductor industry towards higher performance and lower energy consumption, as the core material for efficient energy conversion. Semicorex products are driven by technological innovation, and we are committed to providing customers with reliable material solutions and working with partners to define a new era of green energy.*
Read MoreSend InquirySemicorex LNOI Wafer: High-performance Lithium Niobate on Insulator wafers with customizable substrates for advanced photonics and RF applications. With precision engineering, customizable options, and superior material quality, Semicorex ensures high-performance LNOI wafers tailored to your application needs.*
Read MoreSend InquirySemicorex LTOI wafer provides high-performance Lithium Tantalate on Insulator solutions, ideal for RF, optical, and MEMS applications. Choose Semicorex for precision engineering, customizable substrates, and superior quality control, ensuring optimal performance for your advanced devices.*
Read MoreSend InquirySemicorex Satellite Plate is a critical component used in semiconductor epitaxy reactors, specifically designed for Aixtron G5+ equipment. Semicorex combines advanced material expertise with cutting-edge coating technology to deliver reliable, high-performance solutions tailored for demanding industrial applications.*
Read MoreSend InquirySemicorex Planetary Susceptor is a high-purity graphite component with a SiC coating, designed for Aixtron G5+ reactors to ensure uniform heat distribution, chemical resistance, and high-precision epitaxial layer growth.*
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